大型直驱风电场多模式多工况机组SSO抑制优先级分析

L. Xu, JiJiong Mi
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引用次数: 0

摘要

现有方法通常将整个直驱风电场视为单个风电场或采用聚合等效方法,忽略了风电场内部的次同步振荡模式,无法分析不同工况下风电场的稳定性差异。首先,利用特征值法对多个pmsg连接的电力系统进行分析,发现系统存在以风电机组和电网为主导的“风电场-电网单点登录模式”和以不同风力机组的DVC链路为主导的“风电场-风电场单点登录模式”,进而根据根轨迹判断抑制“风电场-电网单点登录模式”的优先级高于抑制“风电场-风电场内单点登录模式”。然后利用特征值法,发现输出功率较弱或距离采集母线较远的pmsg的单点登录抑制优先级高于输出功率较强或靠近采集母线的pmsg。给出了考虑抑制优先级的应急参数调整和顺序截止方案。基于PSCAD/EMTDC平台的时域仿真验证了上述结论的有效性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
SSO Suppression Priority Analysis of Multi-mode and Multi-condition Units in Large-Scale Direct-Drive Wind Farms
Existing method usually regard the whole direct-drive wind farm as a single turbine or use aggregated equivalent method, which ignored the inside-wind-farm sub-synchronous oscillation (SSO) modes and cannot analyze the stability difference of turbines under different working conditions. Firstly, the eigenvalue method is used to analyze the power system connected with multiple PMSGs, and found the system exist the "wind-farm-grid SSO modes" led by wind turbine and the power grid and the "inside-wind-farm SSO modes" led by DVC links of different wind turbines, Further, based on the root locus, it is judged that the priority of suppressing "wind-farm-grid SSO mode" is higher than that of suppressing "inside-wind-farm SSO modes". Then using eigenvalue method, found the SSO suppression priority of the PMSGs with weak output power or far away from the collecting bus is higher than that of the PMSGs with strong output power or near the collecting bus. It also gives emergency parameter adjustment and order cut-off scheme considering the suppression priority. Time-domain simulation based on PSCAD/EMTDC platform verifies the validity of the above conclusions.
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